Exhumation of the ultrahigh‐pressure continental crust in east central China: Cretaceous and Cenozoic unroofing and the Tan‐Lu fault

Эксумация ультравысокобарической континентальной коры в восточно-центральном Китае: меловое и кайнозойское снятие покрова и разлом Тан-Лу
T. R. Ireland, Bradley R. Hacker, Lothar Ratschbacher, Michael McWilliams, Shuwen Dong, Laura E. Webb, Andrew T. Calvert, Daniel Chateigner, Hans‐Rudolf Wenk
2000-06-10

Cordilleran-type extensional complexCretaceous transtensionTan-Lu faultexhumationultrahigh-pressure continental crust
The orogenic architecture of the world's largest ultrahigh‐pressure exposure, the Hong'an‐Dabie Mountains of the Triassic Qinling‐Dabie orogenic belt, is dominated by Cretaceous and Cenozoic structures that contributed to its exhumation from ≤30 km depth. Cretaceous magmatic crustal recycling (≥50% for the entire Dabie) and heating (>250° to >700°C) were most prominent in Dabie, and exhumation, magmatism, and cooling were all controlled by Cretaceous transtension. Exhumation was accomplished principally by an asymmetric Cordilleran‐type extensional complex in the northern Dabie (Northern Orthogneiss unit) between 140 and 120 Ma, at rates as fast as 2 mm/yr and average horizontal stretching rates of up to 6 mm/yr. Cretaceous reactivation occurred within a regional transtensional strain field as a result of far‐field collisions and Pacific subduction. The onset of crustal extension was preceded and possibly facilitated by a reheating of the Hong'an‐Dabie crust (∼140 Ma) coeval with the onset of voluminous magmatism in eastern China (∼145 Ma), which resulted from a change in Pacific subduction from highly oblique to orthogonal. The Tan‐Lu continental‐scale fault was a normal fault zone in the mid‐Cretaceous (∼110‐90 Ma) and underwent ≥5.4 km dip slip and ≥4 km throw in the Cenozoic. During the India‐Asia collision the Qinling‐Dabie belt acted as the structural discontinuity between the strike‐slip‐dominated escape tectonics south of the Qilian‐Qinling‐Dabie belt and the rifting‐dominated tectonism north of it. The most prominent Cretaceous and Cenozoic structures of the Hong'an‐Dabie, the Xiaotian‐Mozitang and the Jinzhai fault zones, respectively, reactivated major lithospheric structures of the Triassic orogen, i.e., the Huwan detachment zone and the suture.
1
An asymmetric Cordilleran-type extensional complex exhumed northern Dabie crust between 140 and 120 Ma, reaching rates of 2 mm/yr and horizontal stretching rates of 6 mm/yr.
2
Cretaceous and Cenozoic fault zones reactivated major Triassic lithospheric structures, including the Huwan detachment zone and the suture.
3
Cretaceous extension followed reheating around 140 Ma and voluminous eastern China magmatism around 145 Ma, linked to a change in Pacific subduction from highly oblique to orthogonal.
4
Cretaceous transtension controlled exhumation, magmatism, and cooling, with at least 50% crustal recycling and heating from >250°C to >700°C in the Dabie region.
5
During India-Asia collision, the Qinling-Dabie belt separated strike-slip-dominated escape tectonics to the south from rifting-dominated tectonism to the north.
6
The Hong’an-Dabie ultrahigh-pressure crust was exhumed from depths of ≤30 km primarily through Cretaceous and Cenozoic tectonic structures.
7
The Tan-Lu fault acted as a mid-Cretaceous normal fault and later accommodated at least 5.4 km of dip slip and 4 km of Cenozoic throw.

The exhumation system of the ultrahigh-pressure continental crust in the Hong'an-Dabie Mountains, including its Cretaceous–Cenozoic structural framework and the Tan-Lu fault

The structural, thermal, magmatic, and kinematic mechanisms and rates of Cretaceous–Cenozoic crustal exhumation, extension, reactivation, and unroofing

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2000-06-10
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T. R. Ireland
Bradley R. Hacker
Lothar Ratschbacher
Michael McWilliams
Shuwen Dong
Laura E. Webb
Andrew T. Calvert
Daniel Chateigner
Hans‐Rudolf Wenk
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